精品国产一区二区亚洲人成毛片_日韩视频在线观看免费_成年人一级黄色片_久久国产精品免费_国产一区二区三区精品视频_亚洲另类色综合网站_黄色美女网站在线观看

Chinese

Advisory hotline: 4008-557-528

hot key words: Dongguan skived fin heat sink vendor Shenzhen skived fin heat sink vendor Dongguan PV inverter heat sink PV inverter heat sink vendor Jiangsu skived fin heat sink vendor Custom SVG heat pipe thermal module

Where you are:Home ? Solution ? Forced air cooling
Solution
Thermal management
Solution
Contact us >>>
Service Hotline:4008-557-528

Phone number:0769-86813888

Company Fax:0769-86813109

Company email:
po123@winsharethermal.com

Company address:Qingxi Town, Dongguan City, floating hill 418 Hong Mang Road

Forced air cooling is to enhance the air movement so as to realize the cooling approach that is required by the heat sources. There are two approaches to quickly realize better cooling performance and these include increasing the cooling surface area of the heat sources and increasing the air velocity when it flows through an object. The first approach of increasing the cooling surface area can be realized by installing heat sinks on the surface of the heat sources. Typically, a heat sink is firmly fixed on the heat source so as to obtain better cooling performance. The second approach of enhancing airflow can be realized by installing fans (wind turbines) to enhance ventilation and strengthen the cooling effect. Under most scenarios, adding a fan onto a heat sink can greatly enhance the cooling efficiency.
Forced air cooling is often used for the cooling of internal combustion engines. As we can see from the exterior of an internal combustion engine on a vehicle or motorcycle, there are fins and an exhaust guard for forced air cooling. The reason for the exterior fins is to increase the cooling area and the fan inside the exhaust guard is to enhance the airflow through the surface of the internal combustion engine so that the temperature of the engine can be reduced quickly to ensure normal operation.
In recent years, Winshare Thermal has been strengthening our research and development on the applications of forced air cooling techniques. We have realized our forced air cooling on wind power converters, PV inverters, and SVG high power machines. The cooling combination of high power skived fin heat sink + fans or high power skived fin heat sink + heat pipe can greatly enhanced the cooling performance.
Air cooling + extruded heat sinks
Air cooling +friction stir welded heat sinks
Air cooling +stitched fin heat sinks
Air cooling +skived fin heat sinks
Air cooling +heat pipe heat sinks
Design inputs, specifications and requirements:

Loss

Single loss
(W)

Number of devices

Total losses
(W)

Model number

Ambient temperatu
(℃)

Cooling design temperature(℃)

IGBT Module

426W

1

426W

FS150R12KT3

60

100

Grand total

 

 

426W

 

Schematic of PV inverter simulation model and cooling design parameters:
3pcs 6025 fans, 5mm to the front panel, the corresponding open area ratio on the panel is 65%, aluminum extruded heat sinks are used, Thermal interface material: 7762 grease 0.1mm, K=4W/m*K.
Descriptions of fan usage and parameters:
C6025M12BPLB1w-7 fan was used in the initial design
(Parameters: 12V, 4500RPM, 34.13dBA)
NMB2410ML-04W-B80 is used in our solution
(Parameters:12V, 7800RPM, 46dBA)

 
Schematic of the simulated temperature profile with the initial design fan:
Schematic of the simulated temperature profile with the new fan in our solution:
 
(Simulation results indicated that for the original heat sink with C6025 fan, the IGBT case temperature is 151℃. For our proposed solution with the NMB6025 fan, the IGBT casetemperature is 145℃. Both fans have the same fan speed, noise, voltage, life expectancy. Therefore, this NMB fan will be the first choice.)
Schematic of the simulation results of the air cooling solution for PV inverters and the summary of data:
Summary of data:
(1) This solution uses all aluminum skived fin heat sink with NMB6025ML 7800RPM fan. The heat sink profile and size remain unchanged. The base thickness remains unchanged. The fin thickness is 0.8mm with a total of 73fins and the gap is 2.3mm on the skived fin heat sink.
(2) Caution: It is required to adjust the fan location so that there is no gap between it and the front panel in an attempt to avoid air recirculation. (The original design has a 5mm gap, which causes air recirculation and the resulting temperature is 6℃ higher.)
(3) Simulation results: The IGBT case temperature is 94.2℃, which meets the customer requirement of 100℃ or below.

The voice of Winshare Thermal: credit and word

Winshare Thermal Ltd. (hereinafter referred to as Winshare Thermal) was founded in 2009. We specialize in the research and development, production and technical services of high power cooling solutions. We are devoted to becoming the leader in the thermal... [See details]

Copyright: Dongguan Winshare Thermal Ltd.

主站蜘蛛池模板: 亚洲综合日韩中文字幕v在线 | 五月天开心婷婷 | 人人香蕉 | 另类视频在线 | 日韩黄在线观看免费视频 | 精品国产系列在线观看 | 国产视频资源 | 国产丝袜啪啪 | 亚洲产国偷v产偷v自拍自拍 | 久久精品国产99久久久 | 国内精品一区二区三区最新 | 97超级碰碰碰久久久观看 | 欧美性最猛xxxx在线观看视频 | 欧美性猛交xxxx乱大交中文 | 日本高清视频一区 | 亚洲成人三级 | 黄色三级视频网站 | 福利一区二区三区视频午夜观看 | 国产啪精品视频网给免丝袜 | 激情性视频 | 国产丝袜美腿 | 99精品视频在线观看免费播放 | 久久久精品久久久久特色影视 | 99久久99 | 激情免费视频 | 精品国产自 | 日本在线观看中文字幕 | 欧美日韩生活片 | 九九全国免费视频 | 国外成人在线视频 | 欧美一区二区三 | 午夜在线亚洲男人午在线 | 久久精品视频久久 | 99精彩视频 | 久久v | 精品啪啪| 麻豆视频免费 | 青娱乐极品视频在线观看 | 4444狠狠 | 亚洲精品午夜视频 | www.jizz中国|